Virus Details


VHFID9690

Host Factor Information

Gene Name DHCR24
HF Protein Name 24-Dehydrocholesterol Reductase
HF Function
Uniprot ID Q15392
Protein Sequence View Fasta Sequence
NCBI Gene ID 1718
Host Factor (HF) Name in Paper DHCR24
Gene synonyms KIAA0018
Ensemble Gene ID ENSG00000116133
Ensemble Transcript ENST00000371269.9 [Q15392-1];ENST00000436604.2 [Q15392-1]
KEGG ID Go to KEGG Database
Gene Ontology ID(s) GO:0000139, GO:0000246, GO:0005634, GO:0005737, GO:0005783, GO:0005789, GO:0006695, GO:0007265, GO:0008104, GO:0008202, GO:0008285, GO:0009725, GO:0009888, GO:0016020, GO:0016628, GO:0019899, GO:0030539, GO:0031639, GO:0033489, GO:0033490, GO:0042605, GO:0042987, GO:0043588, GO:0050614, GO:0061024, GO:0071949,
MINT ID Q15392
STRING Click to see interaction map
GWAS Analysis Click to see gwas analysis
OMIM ID 602398;606418
PANTHER ID PTHR10801;PTHR10801:SF0
PDB ID(s) N.A.,
pfam ID PF01565,
Drug Bank ID N.A.,
ChEMBL ID CHEMBL2331059
Organism Homo sapiens (Human)

Pathogen Information

Virus Name Severe Acute Respiratory Syndrome Coronavirus 2
Virus Short Name SARS CoV-2
Order Nidovirales
Virus Family Coronaviridae
Virus Subfamily Coronavirinae
Genus Betacoronavirus
Species Betacoronavirus-1
Host Vertebrates
Cell Tropism Epithelial cells of respiratory or enteric tracts, neurological tissues are also frequently infected
Associated Disease Mainly respiratory diseases
Mode of Transmission Sexual contact, blood, breast feeding
VIPR DB link https://www.viprbrc.org/brc/vipr_search.do?species=Betacoronavirus
ICTV DB link https://ictv.global/report/182/orthocoronavirinae
Virus Host DB link

Publication Information

Paper Title Single-cell meta-analysis of SARS-CoV-2 entry genes across tissues and demographics
Author's Name Christoph Muus, Malte D Luecken , Gökcen Eraslan, Lisa Sikkema, Avinash Waghray, Graham Heimberg, Yoshihiko Kobayashi , Eeshit Dhaval Vaishnav, Ayshwarya Subramanian, Christopher Smillie, Karthik A Jagadeesh, Elizabeth Thu Duong, Evgenij Fiskin, Elena Torlai Triglia, Meshal Ansari, Peiwen Cai , Brian Lin, Justin Buchanan, Sijia Chen, Jian Shu, Adam L Haber, Hattie Chung, Daniel T Montoro, Taylor Adams, Hananeh Aliee, Samuel J Allon, Zaneta Andrusivova, Ilias Angelidis, Orr Ashenberg, Kevin Bassler, Christophe Bécavin, Inbal Benhar, Joseph Bergenstråhle, Ludvig Bergenstråhle, Liam Bolt, Emelie Braun, Linh T Bui, Steven Callori, Mark Chaffin, Evgeny Chichelnitskiy, Joshua Chiou, Thomas M Conlon, Michael S Cuoco, Anna S E Cuomo, Marie Deprez, Grant Duclos, Denise Fine, David S Fischer, Shila Ghazanfar, Astrid Gillich, Bruno Giotti, Joshua Gould, Minzhe Guo, Austin J Gutierrez, Arun C Habermann, Tyler Harvey, Peng He, Xiaomeng Hou, Lijuan Hu, Yan Hu, Alok Jaiswal, Lu Ji, Peiyong Jiang, Theodoros S Kapellos, Christin S Kuo, Ludvig Larsson,Michael A Leney-Greene, Kyungtae Lim, Monika Litviňuková, Leif S Ludwig, Soeren Lukassen, Wendy Luo, Henrike Maatz, Elo Madissoon, Lira Mamanova, Kasidet Manakongtreecheep, Sylvie Leroy, Christoph H Mayr, Ian M Mbano, Alexi M McAdams, Ahmad N Nabhan, Sarah K Nyquist, Lolita Penland, Olivier B Poirion, Sergio Poli, CanCan Qi, Rachel Queen, Daniel Reichart, Ivan Rosas, Jonas C Schupp, Conor V Shea, Xingyi Shi, Rahul Sinha, Rene V Sit, Kamil Slowikowski, Michal Slyper, Neal P Smith, Alex Sountoulidis, Maximilian Strunz, Travis B Sullivan, Dawei Sun, Carlos Talavera-López, Peng Tan, Jessica Tantivit, Kyle J Travaglini, Nathan R Tucker, Katherine A Vernon, Marc H Wadsworth, Julia Waldman, Xiuting Wang, Ke Xu, Wenjun Yan, William Zhao, Carly G K Ziegler
Journal Name Nature Medicine
Pubmed ID 33654293
Abstract ACE2 and accessory proteases (TMPRSS2, CTSL) are needed for SARS-CoV-2 cellular entry, and their expression may shed light on viral tropism and impact across the body. We assess the cell type-specific expression of ACE2, TMPRSS2, and CTSL across 107 single-cell RNA-Seq studies from different tissues. ACE2, TMPRSS2, and CTSL are co-expressed in specific subsets of respiratory epithelial cells in the nasal passages, airways, and alveoli, and in cells from other organs associated with COVID-19 transmission or pathology. We performed a meta-analysis of 31 lung scRNA-seq studies with 1,320,896 cells from 377 nasal, airway, and lung parenchyma samples from 228 individuals. This revealed cell type specific associations of age, sex, and smoking with expression levels of ACE2, TMPRSS2, and CTSL. Expression of entry factors increased with age and in males, including in airway secretory cells and alveolar AT2 cells. Expression programs shared by ACE2+TMPRSS2+ cells in nasal, lung and gut tissues included.
Used Model PBMCs (peripheral blood mononuclear cells)
DOI 10.1038/s41591-020-01227-z